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NaYF4:Ln@NaYF4 核壳纳米粒子的合成及喷墨打印用于防伪应用的上转换荧光增强。

Synthesis and Inkjet Printing of NaYF₄:Ln@NaYF₄ Core-Shell Nanoparticles with Enhanced Upconversion Fluorescence for Anti-Counterfeiting Applications.

机构信息

College of Packaging and Materials Engineering, Hunan University of Technology, Zhuzhou 412007, P. R. China.

College of Computer Science, Hunan University of Technology, Zhuzhou 412007, P. R. China.

出版信息

J Nanosci Nanotechnol. 2020 Mar 1;20(3):1511-1519. doi: 10.1166/jnn.2020.17353.

Abstract

Recently, lanthanide-doped upconversion luminescent materials have showed great potential in optical data storage, information encryption and anti-counterfeiting. However, the low upconversion luminescence still limited their applications. In this work, we fabricated RGB NaYF₄:Ln@NaYF₄ core-shell nanoparticles (CSNPs) with enhanced upconversion luminescence by coating an inert NaYF₄ shell onto NaYF₄:Ln core nanoparticles via thermal decomposition method. The effect of increased shell temperature and addition of shell precursors on crystal phase, morphology and luminescent property of the synthesized CSNPs were systematically investigated. It was demonstrated that high shell growing temperature facilitated the formation of pure -NaYF₄ CSNPs. Upon increasing amount of shell precursors, the morphologies of hexagonal phase NaYF₄ CSNPs changed from nanorod to nanocube and showed different luminescent properties. Pure hexagonal phase NaYF₄ CSNPs with highest upconversion luminescence of about 15 times higher than NaYF₄:Ln core nanoparticles can be prepared at 310 °C with the addition of shell precursors at 3 mmol. Moreover, three-primary-color (RGB) CSNPs with enhanced upconversion luminescence were successfully prepared by changing the doping pair of lanthanide ions in core. The synthesized RGB CSNPs were fabricated into environment friendly luminescent ink by sequential surface modification by PAA ligand and dispersing in mixture solvent of ethanol, water and glycerol. Comparative results showed that the fluorescence enhanced RGB CSNPs inks were more suitable for inkjet printing of multicolored, complex and high resolution luminescent anti-counterfeiting patterns on paper substrates.

摘要

最近,镧系掺杂上转换发光材料在光数据存储、信息加密和防伪等领域显示出巨大的应用潜力。然而,上转换发光效率低仍然限制了它们的应用。在这项工作中,我们通过热分解法在 NaYF4:Ln 核纳米粒子上包覆惰性 NaYF4 壳,制备了上转换发光增强的 RGB NaYF4:Ln@NaYF4 核壳纳米粒子(CSNPs)。系统研究了增加壳层温度和添加壳层前驱体对合成 CSNPs 的晶体相、形貌和发光性能的影响。结果表明,高壳生长温度有利于形成纯 -NaYF4 CSNPs。随着壳层前驱体用量的增加,六方相 NaYF4 CSNPs 的形貌由纳米棒变为纳米立方体,并表现出不同的发光性能。在添加 3mmol 壳层前驱体时,以 310°C 可以制备出上转换发光强度约为 NaYF4:Ln 核纳米粒子的 15 倍的纯六方相 NaYF4 CSNPs。此外,通过改变核心中镧系离子的掺杂对,可以成功制备出具有增强上转换发光的三基色(RGB)CSNPs。合成的 RGB CSNPs 通过 PAA 配体的顺序表面修饰,并分散在乙醇、水和甘油的混合溶剂中,制备成环境友好型发光油墨。对比结果表明,荧光增强的 RGB CSNPs 油墨更适合在纸基上喷墨打印出多色、复杂和高分辨率的发光防伪图案。

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